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FIA functions as an early signal component of abscisic acid signal cascade in Vicia faba guard cells.


ABSTRACT: An abscisic acid (ABA)-insensitive Vicia faba mutant, fia (fava bean impaired in ABA-induced stomatal closure) had previously been isolated. In this study, it was investigated how FIA functions in ABA signalling in guard cells of Vicia faba. Unlike ABA, methyl jasmonate (MeJA), H(2)O(2), and nitric oxide (NO) induced stomatal closure in the fia mutant. ABA did not induce production of either reactive oxygen species or NO in the mutant. Moreover, ABA did not suppress inward-rectifying K(+) (K(in)) currents or activate ABA-activated protein kinase (AAPK) in mutant guard cells. These results suggest that FIA functions as an early signal component upstream of AAPK activation in ABA signalling but does not function in MeJA signalling in guard cells of Vicia faba.

SUBMITTER: Sugiyama Y 

PROVIDER: S-EPMC3276098 | biostudies-literature | 2012 Feb

REPOSITORIES: biostudies-literature

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FIA functions as an early signal component of abscisic acid signal cascade in Vicia faba guard cells.

Sugiyama Yusuke Y   Uraji Misugi M   Watanabe-Sugimoto Megumi M   Okuma Eiji E   Munemasa Shintaro S   Shimoishi Yasuaki Y   Nakamura Yoshimasa Y   Mori Izumi C IC   Iwai Sumio S   Murata Yoshiyuki Y  

Journal of experimental botany 20111129 3


An abscisic acid (ABA)-insensitive Vicia faba mutant, fia (fava bean impaired in ABA-induced stomatal closure) had previously been isolated. In this study, it was investigated how FIA functions in ABA signalling in guard cells of Vicia faba. Unlike ABA, methyl jasmonate (MeJA), H(2)O(2), and nitric oxide (NO) induced stomatal closure in the fia mutant. ABA did not induce production of either reactive oxygen species or NO in the mutant. Moreover, ABA did not suppress inward-rectifying K(+) (K(in)  ...[more]

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